首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Efficient Method To Obtain the Force Field for CO2 Adsorption on Zeolite 13X: Understanding the Host-Guest Interaction Mechanisms of Low-Pressure Adsorption
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Efficient Method To Obtain the Force Field for CO2 Adsorption on Zeolite 13X: Understanding the Host-Guest Interaction Mechanisms of Low-Pressure Adsorption

机译:在沸石上获得CO2吸附力场的有效方法13x:了解低压吸附的主机 - 客户交互机制

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The current force fields used in grand canonical Monte Carlo (GCMC) simulations are frequently found to underestimate the low-pressure adsorption of CO, on zeolite 13X, which is crucial for engineering applications, including air prepurification and carbon capture from air. In this paper, a series of GCMC simulations are performed with a cation-free 13X model to study the influence of the force field parameters for host-guest interaction pairs on low-pressure adsorption. The unique effects of the equilibrium diameters of the interaction pairs on loading under low pressures are studied, and these effects are classified as one of three affecting modes according to their relative value for the interatomic distance of the interaction pair. Based on these results, six possible trends for a low-pressure adsorption isotherm with a changing equilibrium diameter are predicted. By revealing the different affecting modes caused by the microstructure of the host-guest interaction, the particular effects of the interaction pairs are explained. An efficient method to obtain the force field is thus proposed to develop a more accurate force field for low-pressure adsorption. The obtained force field is validated by comparing its results to experimental loading and isosteric heat data from the literature and by performing adsorption experiments in NaX with different Si/A1 ratios.
机译:通常发现大规范蒙特卡罗(GCMC)模拟中使用的目前的力场,以低估了CO的低压吸附,沸石13x,这对于工程应用至关重要,包括空气卓越和空气捕获。在本文中,使用无阳离子13x模型进行了一系列GCMC模拟,以研究低压吸附对宿主相互作用对的力场参数的影响。研究了相互作用对在低压下加载的平衡直径的独特效果,并且这些效果根据相互作用对的间隙距离的相对值被分类为三种影响模式之一。基于这些结果,预测了具有改变平衡直径的低压吸附等温线的六种可能的趋势。通过揭示由寄主访客交互的微观结构引起的不同影响模式,解释了相互作用对的特定效果。因此提出了一种获得力场的有效方法,以开发更精确的力场,用于低压吸附。通过将其结果与文献中的实验载荷和基位热数据进行比较,并通过以不同的Si / A1比较进行NAX的吸附实验来验证所获得的力场。

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